Angular modulation of nonlinear Breit-Wheeler yield by vacuum dichroism

Fuente: arXiv
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Main Authors: Chen, Jia-Ding, Dai, Ya-Nan, Zhuang, Kai-Hong, Jiang, Jing-Jing, Shen, Baifei, Chen, Yue-Yue
Format: Preprint
Published: 2024
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author Chen, Jia-Ding
Dai, Ya-Nan
Zhuang, Kai-Hong
Jiang, Jing-Jing
Shen, Baifei
Chen, Yue-Yue
author_facet Chen, Jia-Ding
Dai, Ya-Nan
Zhuang, Kai-Hong
Jiang, Jing-Jing
Shen, Baifei
Chen, Yue-Yue
contents Vacuum polarization is numerically investigated for the interaction between a GeV electron beam and a counterpropagating ultraintense laser pulse in the quantum radiation dominated-regime (QRDR). We identify a signal of vacuum polarization in pair density using a straightforward one-stage setup, circumventing the challenge of preparations of highly polarized probe photons or precise measurements of photon polarization. In our scheme, most electrons are scattered in the direction of laser propagation while emitting substantial linearly polarized gamma photons. These photons undergo vacuum birefringence and dichroism before decaying into electron-positron pairs via the nonlinear Breit-Wheeler process. We demonstrate that vacuum dichroism enhances the purity of linear polarization, which suppresses the overall yield of electron-positron pairs and allows energetic photons to penetrate deeper into the laser pulse. The pairs produced by these energetic photons are more likely to be deflected into small-angle regions rather than being reflected, leading to an enhancement of pair yield in forward scattering. The difference in positron yield may have potential applications in measuring vacuum polarization effect in future laser-particle experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2412_00745
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Angular modulation of nonlinear Breit-Wheeler yield by vacuum dichroism
Chen, Jia-Ding
Dai, Ya-Nan
Zhuang, Kai-Hong
Jiang, Jing-Jing
Shen, Baifei
Chen, Yue-Yue
High Energy Physics - Phenomenology
Vacuum polarization is numerically investigated for the interaction between a GeV electron beam and a counterpropagating ultraintense laser pulse in the quantum radiation dominated-regime (QRDR). We identify a signal of vacuum polarization in pair density using a straightforward one-stage setup, circumventing the challenge of preparations of highly polarized probe photons or precise measurements of photon polarization. In our scheme, most electrons are scattered in the direction of laser propagation while emitting substantial linearly polarized gamma photons. These photons undergo vacuum birefringence and dichroism before decaying into electron-positron pairs via the nonlinear Breit-Wheeler process. We demonstrate that vacuum dichroism enhances the purity of linear polarization, which suppresses the overall yield of electron-positron pairs and allows energetic photons to penetrate deeper into the laser pulse. The pairs produced by these energetic photons are more likely to be deflected into small-angle regions rather than being reflected, leading to an enhancement of pair yield in forward scattering. The difference in positron yield may have potential applications in measuring vacuum polarization effect in future laser-particle experiments.
title Angular modulation of nonlinear Breit-Wheeler yield by vacuum dichroism
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2412.00745